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Axial length variation impacts on superficial retinal vessel density and foveal avascular zone area measurements using optical coherence tomography angiography
Journal article

Axial length variation impacts on superficial retinal vessel density and foveal avascular zone area measurements using optical coherence tomography angiography

D.M. Sampson, P. Gong, D. An, M. Menghini, A. Hansen, D.A. Mackey, David Sampson and F.K. Chen
Investigative Ophthalmology and Visual Science, Vol.58(7), pp.3065-3072
2017

Abstract

Axial length Bennett formula Foveal avascular zone Littman formula Magnification error Normative database OCTA Optical coherence tomography angiography Retina Retinal disease Superficial vessel plexus adult aged Article axial length variation biometry blood vessel density blood vessel parameters eye fundus eye refraction female foveal avascular zone area human image quality image segmentation imaging software male mathematical analysis middle aged normal human optical coherence tomography angiography priority journal refraction error retina blood vessel retina fovea visual acuity adolescent capillary cytology eye axis length fluorescence angiography optical coherence tomography procedures reproducibility retina blood vessel retina macula lutea vascularization young adult Adolescent Adult Aged Axial Length Eye Capillaries Female Fluorescein Angiography Fovea Centralis Fundus Oculi Healthy Volunteers Humans Macula Lutea Male Middle Aged Reproducibility of Results Retinal Vessels Tomography Optical Coherence Young Adult

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